TXRF Trace Element Analyzer / Biomedical

Services

Biological Sample Detection

Blood and Urine Analysis: Detecting trace elements and heavy metals in blood and urine provides critical data for disease diagnosis and health monitoring. For example, excessive levels of heavy metals like lead and mercury in blood can indicate environmental pollution or occupational exposure risks, while abnormalities in certain trace elements in urine may be associated with specific health issues. This analysis not only aids in the early detection of potential health problems but also provides a scientific basis for disease prevention and treatment. Tissue Sample Analysis: Analyze the elemental composition of human tissues to help investigate disease mechanisms and potential treatments. Cell Research: Detect trace elements and metal ions in cell cultures to ensure experimental stability and reproducibility.
Biological Sample Detection

Drug Content Analysis

The detection and analysis of trace elements and metal impurities in pharmaceuticals is of great importance for ensuring drug safety and efficacy, improving pharmaceutical quality control, promoting the advancement of medical science and technology, and meeting legal and regulatory requirements. LANScientific’s TXRF is a widely used tool in pharmaceuticals, and its common applications include:
  1. Harmful metal detection: Detect harmful metal elements in drugs, such as lead, cadmium, arsenic, mercury, etc., ensuring their content remains within safe limits.
  2. Active ingredient analysis: Determine the precise content of key active ingredients in pharmaceuticals to ensure accurate dosage. For example, Pt is commonly found in chemotherapy drugs, cancer medications, and cardiovascular drugs.
  3. Impurity analysis: Analyze trace impurities in pharmaceuticals to help optimize the production process and increase product purity.
Drug Content Analysis

Pharmaceutical Process Optimization

For quality control of raw materials, intermediates, and finished products in the pharmaceutical process:
  1. Raw material testing: Ensures the purity of pharmaceutical raw materials and prevents the introduction of harmful elements and impurities.
  2. Process control: With a comprehensive quality control system combined with the real-time monitoring and analysis capabilities of TXRF technology, deviations and deficiencies in the production process can be detected and corrected promptly. The process can be continuously improved and optimized, enhancing product quality consistency.
  3. Finished product inspection: In the pharmaceutical process, finished product inspection plays a critical role in ensuring drug quality. TXRF technology can be used to rigorously test and control finished pharmaceuticals, guaranteeing stable and consistent product quality.
Pharmaceutical Process Optimization